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Isolation and Flow Cytometric Assessment of Neuroimmune Interactions in a Mini-Stroke Murine Model
Published on: June 20, 2025
Immune Checkpoint B7-H3 Inhibition Reprograms Acute Neuroinflammation and Protects the Brain After Acute Ischemic
Arun Kumar Boda1, Kit-Kay Mak1, Weiguo Li2
1Departments of Pharmacy Practice (A.K.B., K.-K.M., B.C.), University of Illinois, Chicago.
Background:
The role of immune checkpoint B7-H3 in acute ischemic stroke prognosis and poststroke immunosuppression remains uninvestigated, despite the clinical significance of immune checkpoints with inflammaging and poststroke infections. In this study, we investigated the effect of regulating cerebral induction of B7-H3 after acute ischemic stroke and evaluated its longitudinal impact on brain damage, neuroinflammation, vascular integrity, host defense gene regulation, and functional outcomes.
Methods:
C57BL/6 mice were subjected to transient middle cerebral artery occlusion and injected (intravenously) with either B7-H3 small interfering RNA or a negative (nontargeting) small interfering RNA at 5 minutes after reperfusion. On poststroke days 1, 3, and 7, magnetic resonance imaging of the mouse brain was performed using a 9.4-T scanner to assess brain damage (T2, apparent diffusion coefficient, and kurtosis) and blood-brain barrier integrity (T1 with contrast). Real-time qPCR and NanoString nCounter neuroinflammation panels were used to determine acute changes in overall neuroinflammatory functions mediated by B7-H3. Motor function was assessed between days 1 and 7 of reperfusion.
Results:
Early inhibition of B7-H3 after stroke significantly reduced blood-brain barrier disruption and brain damage and promoted functional outcomes. Poststroke neuroinflammation was reprogrammed with B7-H3 inhibition to balance neuroprotective anti-inflammatory mechanisms without compromising the immune response, which is crucial for preventing poststroke infections.
Conclusions:
The longitudinal assessment of blood-brain barrier, infarction, and proinflammatory cytokines demonstrates that B7-H3 induction during the acute period after stroke mediates poststroke neuroinflammation and secondary brain damage.
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